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Xylans, acetates esters

Although most polysaccharides may be acylated without degradation, acyl derivatives of xylans29 are often unsatisfactory for molecular-weight determinations owing to their poor solubility characteristics. Mixed esters of xylans143 are often superior in this respect, but there are obvious difficulties in the differential analysis of acyl groups. Hemicellulose nitrates have been used for measurements of molecular size,168 but xylan nitrates,29 like xylan acetates, are reported to have poor solubility characteristics. [Pg.465]

The late discovery of acetyl xylan and feruloyl esterases has been partly due to the lack of suitable substrates. Xylans are often isolated by alkaline extraction, in which ester groups are saponified. Treatment of plant materials under mildly acidic conditions, as in steaming or aqueous-phase thermomechanical treatment, leaves most of the ester groups intact. These methods, however, partly hydrolyze xylan to shorter fragments (63,69). Polymeric acetylated xylan can be isolated from delignified materials by dimethyl sulfoxide extraction (70). The choice of substrate is especially important in studies of esterases for deacetylation of xylans. The use of small chromophoric substrates (p-nitrophenyl acetate, a-naphthyl acetate, and methylumbelliferyl acetate) analogously to the assays of disaccharidases may lead to the monitoring of esterases unable to deacetylate xylan (33, 63, 64). [Pg.431]

Esterases. Acetyl esterase (EC 3.1.1.6) removes acetyl esters from acetylated xylose and short-chain xylo-oligomers. It s polymeracting counterpart, acetyl xylan esterase (EC 3.1.1.72), has a similar activity, but prefers polymeric xylan.244 In addition to acetate-specific enzyme detection kits, HPLC or GC analysis of acetate release from native extracted xylan and chemically acetylated xylan, colorimetric substrates, such as p-nitrophenol acetate and /3-napthyl acetate, or the fluorometric substrate, 4-methylumbelliferyl acetate are also used to assay acetyl esterases.244,253 The third esterase, ferulic acid esterase (EC 3.1.1.73), hydrolyzes the ester bond between ferulic acid or coumaric acid and the arabinose side chain of arabinoxylan. Assays for this activity are usually carried out using starch-free wheat bran or cellulase-treated gramineous biomass as a substrate and monitoring ferulic or coumaric acid released by HPLC or TLC. When preparing enzyme-treated substrates, care must be taken to employ phenolic-acid-esterase-free cellulases.244 Other substrates include methyl and ethyl esters of the phenolic acids, as well as finely ground plant biomass.240,254,255... [Pg.1491]

An elegant method based on selective enrichment of specific positions of the lignin side chain with C followed by C NMR studies [79] was applied to the study of LCC isolated from labeled wood [80]. The author claimed the presence in this preparation of LCC linkages of acetal, ether, and ester types at the a-position of the side chain and the absence of LCC bonds at the p- and y-positions of the side chain. However, a comprehensive discussirai revealed that these conclusions were not properly supported [29]. These same problems did not allow reliable NMR characterization of LCC linkages in a model Xylan-DHP substrate [58]. The main conclusion drawn from these studies is that ID C NMR is not a reliable tool to investigate LCC linkages even when using labeled preparations. [Pg.102]

Acetyl xylan esterase 3.1.1.72 Ester bond Side groups Acetic acid... [Pg.459]


See other pages where Xylans, acetates esters is mentioned: [Pg.577]    [Pg.295]    [Pg.331]    [Pg.15]    [Pg.430]    [Pg.125]    [Pg.67]    [Pg.18]    [Pg.135]    [Pg.275]    [Pg.281]    [Pg.295]    [Pg.10]    [Pg.254]   
See also in sourсe #XX -- [ Pg.294 ]




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5,5-acetal ester

Acetate esters

Xylan

Xylan acetate

Xylan esters

Xylane

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